CN1583246A - Preparing method for loaded titania catalyst of ester interchange synthetic phenyl ester oxalate - Google Patents

Preparing method for loaded titania catalyst of ester interchange synthetic phenyl ester oxalate Download PDF

Info

Publication number
CN1583246A
CN1583246A CN 200410019331 CN200410019331A CN1583246A CN 1583246 A CN1583246 A CN 1583246A CN 200410019331 CN200410019331 CN 200410019331 CN 200410019331 A CN200410019331 A CN 200410019331A CN 1583246 A CN1583246 A CN 1583246A
Authority
CN
China
Prior art keywords
carrier
catalyst
ester exchange
oxalic acid
phenyl ester
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN 200410019331
Other languages
Chinese (zh)
Other versions
CN1255210C (en
Inventor
马新宾
杨霞
王胜平
巩金龙
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Tianjin University
Original Assignee
Tianjin University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Tianjin University filed Critical Tianjin University
Priority to CN 200410019331 priority Critical patent/CN1255210C/en
Publication of CN1583246A publication Critical patent/CN1583246A/en
Application granted granted Critical
Publication of CN1255210C publication Critical patent/CN1255210C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Landscapes

  • Organic Low-Molecular-Weight Compounds And Preparation Thereof (AREA)
  • Low-Molecular Organic Synthesis Reactions Using Catalysts (AREA)

Abstract

A carried TiO2 catalyst used for synthesizing the phenyl oxalate used to prepare diphenyl carbonate (DPC) by ester exchange is prepared through preparing the dipping liquid, pretreating carrier, mixing it with said dipping liquid, hydrolyzing, drying and calcining. It has high activity and no pollution.

Description

Ester exchange synthesis of oxalic acid phenyl ester load type titania Preparation of catalysts method
Technical field
The present invention relates to a kind of ester exchange synthesis of oxalic acid phenyl ester load type titania Catalysts and its preparation method, specifically, relate to synthetic raw material methyl phenyl oxalate (MPO) and the phenostal (DPO) of producing diphenyl carbonate (DPC) of dimethyl oxalate under the heterogeneous conditions (DMO) and phenol ester exchange and use the Preparation of catalysts method.
Background technology
With dimethyl oxalate and phenol is that feedstock production methyl phenyl oxalate and phenostal are that all are the key technology of feedstock production diphenyl carbonate with dimethyl oxalate and phenol.The reactions steps of this key technology experience is as follows:
With this key technology is that the dpc production technology of core occurred in the nineties, but development rapidly, particularly Ri Ben Ube company is devoted to the research of this respect always, and applied for many patents, as EP1013633A1, US5811573, CN1164529A, TW438765, US5834615, EP0832872A1, US5922827, EP0832910A2 etc.But in above-mentioned all patents, relating to the dimethyl oxalate is raw material prepares diphenyl carbonate synthesis by ester exchange raw material, when being methyl phenyl oxalate or phenostal, though used ester exchange catalyst is brought in constant renewal in, variation is also perfect, can be alkali metal, cadmium, zirconium, plumbous, iron, copper, zinc compound or organo-tin compound, aluminium, titanium, the organic acid compound of vanadium etc., but be the homogeneous catalyst that dissolves in reaction system, promptly the ester exchange reaction that will carry out to some extent be homogeneous reaction, thereby above-mentioned all patented technologies have all used complicated piece-rate system or equipment that catalyst is separated with reaction.The inventor mentions in 02129212.4 patent and adopts titanium deoxide catalyst catalysis synthesis of oxalic acid phenyl ester, has that selectivity is good, the yield advantages of higher, but does not mention this Preparation of catalysts method.
Summary of the invention
The object of the present invention is to provide a kind of ester exchange synthesis of oxalic acid phenyl ester load type titania Preparation of catalysts method.This method operating condition gentleness, the catalyst activity height that technical process is simple, prepared, selectivity is good.
Prepare the method for catalysis synthesis of oxalic acid phenyl ester with the load type titania catalyst, this catalyst carrier is selected from a kind of in magnesia, active carbon, Alpha-alumina or gama-alumina, silica gel, tin oxide, molecular sieve, the zirconia, and its active component content of titanium dioxide is at 1-20wt%.It is to form with the Hydrolyze method preparation, it is characterized in that comprising process:
(1) be that the carrier granular of 30~100 is placed in the drying box in 60~200 ℃ of dryings 2~8 hours with particle diameter, standby;
(2) take by weighing butyl titanate and be dissolved in the absolute ethyl alcohol, be mixed with the mixed solution that molar concentration is 0.03~0.6mol/L, be maceration extract after fully stirring;
(3) press carrier and butyl titanate mol ratio: 1: (0.008~0.2) adds dry good carrier and mixes with maceration extract, after at room temperature stirring 1~2 hour in the nitrogen stream, press butyl titanate and deionized water mol ratio: 1: (1~8) under agitation drips deionized water;
(4) mixed liquor after will fully stirring left standstill 24~72 hours in the nitrogen stream under room temperature, obtained pressed powder;
(5) with this pressed powder in 60~200 ℃ dry 4~12 hours down, send into again in the Muffle furnace in 300~800 ℃ of following roastings 5 hours; Promptly make the support type titanium oxide catalyst.
Above-mentioned carrier is a silica gel.
Above-mentioned carrier and butyl titanate mol ratio are 1: (0.06~0.14).
Above-mentioned butyl titanate and deionized water be in molar ratio: 1: (4~8).
Above-mentioned sintering temperature is 500~600 ℃.
The invention has the advantages that, adopt Hydrolyze method to prepare the load type titania catalyst, have operating condition gentleness, environmentally safe, equipment had the burn into technical process is simple, low cost and other advantages.Raw material phenyl oxalate by employing load type titania catalytic synthesis of C diphenyl phthalate is methyl phenyl oxalate and phenostal, not only conversion of raw material and product selectivity all have and adopt homogeneous catalyst significantly to improve, and separating technology process and equipment have been save to the complexity of catalyst and reaction system, reduced production cost, the industrialization of Pyrogentisinic Acid and phenostal ester exchange has far reaching significance.
Come the present invention is further specified below by specific embodiment, but do not limit the present invention.
The specific embodiment
Preparation of [embodiment 1] support type titanium oxide catalyst and active the investigation
The present invention prepares phenol and dimethyl oxalate ester exchange synthesis of oxalic acid phenyl ester is investigated with the enforcement of support type titanium oxide catalyst.The silica-gel carrier particle is as for 120 ℃ of dryings in the drying box, standby.Take by weighing 0.86 gram butyl titanate and be dissolved in the 80ml absolute ethyl alcohol, at room temperature stir 0.5h in the nitrogen stream, the particle diameter of putting into 20g is the good silica-gel carriers of 80 preliminary treatment, fully stir 2h after, slowly drip the ethanolic solution that contains the 0.4g deionized water.Mixed liquor after fully stirring was left standstill 24~72 hours in the nitrogen stream under room temperature, obtain pressed powder, with this solid in 60~200 ℃ dry 5 hours down, send into again in the Muffle furnace in 550 ℃ of following roastings 5 hours, promptly making the titanium dichloride load amount is the support type titanium oxide catalyst of 1wt%.
The present invention is to be that the enforcement of feedstock production methyl phenyl oxalate and phenostal process is investigated with dimethyl oxalate and phenol under the heterogeneous catalytic reaction condition, in 250 milliliters there-necked flask, carry out, the heating of heat collecting type electromagnetic agitation, chuck is furnished with thermometer, to show the reaction system temperature.The consumption of technical grade DMO is 0.1 mole, and the amount of chemical pure phenol is 0.3 mole, metal oxide supporting catalyst TiO 2/ SiO 2Consumption be 1.8 the gram, under normal pressure, add, wherein the load capacity of titanium dioxide is 1%.Stir and heat up, reaction temperature is controlled at 180.0 ± 2 ℃, and the reaction time is 2 hours.For improving conversion of raw material, mouth is equipped with the reflux condensing tube of the thermostatical circulating water that feeds 80 ℃ (a little more than boiling points of by-product methyl alcohol) in the flask, and the gas that reaction generates partly distillates by reflux condensation mode, and collects distillate in cold-trap.The cold-trap outlet connects triple valve, and gas phase analysis is got at the place at triple valve.After reaction finished, by filtration under diminished pressure separating reaction material and catalyst, filtrate was the mixture of product and unreacting material.Determine reactant liquor, the gentle phase composition of liquid distillate by gas chromatography instrument and gas-chromatography.With the conversion ratio of DMO, the selectivity of MPO, DPO is index, investigates reactivity worth.
[embodiment 2-8]
Change metal oxide supporting catalyst TiO 2/ SiO 2The load capacity of middle titanium oxide is respectively 4%, 8%, 10%, 12%, 14%, 16%, 18%, and under other condition and the embodiment 1 identical situation, carries out ester exchange reaction, forms embodiment 2-8 respectively, investigates reaction result.
Table 1:TiO 2/ SiO 2Catalyst series catalyzed transesterification result (weight percentage)
Titania oxide supported DMO selectivity, % yield, %
Embodiment
Amount, % conversion ratio % methyl phenyl ethers anisole MPO DPO MPO DPO
1 1 45.9 0.6 79.0 19.7 36.3 9.0
2 4 46.5 0.8 77.4 21.5 36.0 10.0
3 8 52.5 0.9 75.7 23.0 39.7 12.1
4 10 62.3 0.9 73.6 23.9 45.9 14.9
5 12 66.3 0.4 71.9 27.3 47.7 18.1
6 14 63.9 0.4 73.1 26.2 46.7 16.7
7 16 60.3 0.6 76.7 22.4 46.3 13.5
8 18 53.8 0.4 76.2 22.9 41.0 12.3
[embodiment 9-13]
It is 16% TiO that catalyst is used titania oxide supported amount instead 2/ MgO loaded catalyst, TiO 2/ Al 2O 3Loaded catalyst, TiO 2/ SnO 2Loaded catalyst, TiO 2/ ZrO 2Loaded catalyst and TiO 2/ C loaded catalyst.Under other condition and embodiment 1 identical situation, carry out ester exchange reaction and form embodiment 9-13 respectively, investigate reaction result.
Table 2: different carriers support type titanium oxide catalyst ester exchange reaction result (weight percentage)
The DMO selectivity, % yield, %
The embodiment catalyst
Conversion ratio % methyl phenyl ethers anisole MPO DPO MPO DPO
9 TiO 2/MgO 62.4 6.4 74.3 18.2 46.4 11.4
10 TiO 2/Al 2O 3 62.2 19.6 55.2 19.4 34.3 12.1
11 TiO 2/SnO 2 49.7 0.3 69.0 29.2 34.3 14.5
12 TiO 2/ZrO 2 45.8 1.0 73.4 25.2 33.6 11.5
13 TiO 2/C 56.9 0.9 71.6 23.5 40.7 13.4
From the foregoing description reaction result as can be seen, when making catalyst with load metal oxide in the process of the present invention, reaction result preferably can both be arranged.Wherein, for all active metal components, with SiO 2For the catalyst of carrier has embodied higher activity and purpose selectivity of product.
[Comparative Examples 1-5]
Adopt AlCl respectively 3, Zn (OAc) 2, Ti (OC 4H 9) 4, SnOBu 2Make ester exchange catalyst with dibutyl tin laurate, the loadings of catalyst is 0.01mol, under other condition and embodiment 1 identical situation, carries out the homogeneous phase ester exchange reaction.The reaction result of Comparative Examples is as shown in table 5.
Table 5: Comparative Examples ester exchange reaction result
The DMO selectivity, % yield, %
The Comparative Examples catalyst
Conversion ratio % accessory substance MPO DPO MPO DPO
1 AlCl 3 79.8 67.1 30.8 2.1 24.6 1.7
2 Zn(OAc) 2 28.1 43.5 53.9 2.6 16.4 0.1
3 Ti(OC 4H 9) 4 92.5 76.6 20.6 2.8 19.0 2.6
4 SnOBu 2 25.7 6.7 80.8 12.5 20.8 3.2
5 dibutyl tin laurates 54.1 65.3 21.0 13.7 11.4 7.4
From embodiment and Comparative Examples as can be seen, be in the technology of feedstock production diphenyl carbonate with dimethyl oxalate and phenol, key technology wherein, be in the step of dimethyl oxalate and phenol ester exchange preparation methyl phenyl oxalate and phenostal, if adopting support type silica is heterogeneous catalysis, the purpose product selectivity exceeds the selectivity in the Comparative Examples far away, and its activity is also higher, thereby higher purpose product yield is arranged.And if with traditional ester exchange catalyst, as be widely used as organic zinc, organic titanium and the organic tin compound as catalyst of ester exchange catalyst, from Comparative Examples 1~5 as can be seen, except that Dibutyltin oxide, the purpose selectivity of product of other catalyst is all extremely low; And Dibutyltin oxide is when making catalyst, and except that costing an arm and a leg, Dibutyltin oxide decomposes voluntarily and forms homogeneous phase with system, outside catalyst can not reclaim, also needs complicated piece-rate system and equipment.
To sum up, load type titania with the Hydrolyze method preparation is the ester exchange reaction of passing through phenol and dimethyl oxalate of feature as ester exchange catalyst, synthetic methyl phenyl oxalate and the phenostal that is used to prepare diphenyl carbonate, for by being raw material with dimethyl oxalate and phenol, elder generation's synthesis of methyl phenyl oxalate and phenostal, by further preparing diphenyl carbonate, provide more favourable key core technology then with phenol ester exchange and/or direct de-carbonyl reaction.
The invention is not restricted to above embodiment, present patent application personnel can make various changes and distortion according to the present invention, only otherwise break away from spirit of the present invention, all should belong to scope of the present invention.

Claims (5)

1. an ester exchange synthesis of oxalic acid phenyl ester is with load type titania Preparation of catalysts method, this catalyst carrier is selected from a kind of in magnesia, active carbon, Alpha-alumina or gama-alumina, silica gel, tin oxide, molecular sieve, the zirconia, its active component content of titanium dioxide is at 1-20wt%, it is to form with the Hydrolyze method preparation, and its feature comprises following process:
(1) be that the carrier granular of 30~100 is placed in the drying box in 60~200 ℃ of dryings 2~8 hours with particle diameter, standby;
(2) take by weighing butyl titanate and be dissolved in the absolute ethyl alcohol, be mixed with the mixed solution that molar concentration is 0.03~0.6mol/L, be maceration extract after fully stirring;
(3) press carrier and butyl titanate mol ratio: 1: (0.008~0.2) adds dry good carrier and mixes with maceration extract, after at room temperature stirring 1~2 hour in the nitrogen stream, press butyl titanate and deionized water mol ratio: 1: (1~8) under agitation drips deionized water;
(4) mixed liquor after will fully stirring left standstill 24~72 hours in the nitrogen stream under room temperature, obtained pressed powder;
(5) with this pressed powder in 60~200 ℃ dry 4~12 hours down, send into again in the Muffle furnace in 300~800 ℃ of following roastings 5 hours; Promptly make the support type titanium oxide catalyst.
2. according to the described ester exchange synthesis of oxalic acid of claim 1 phenyl ester load type titania Preparation of catalysts method, it is characterized in that: carrier is a silica gel.
3. according to the described ester exchange synthesis of oxalic acid of claim 1 phenyl ester load type titania Preparation of catalysts method, it is characterized in that: carrier and butyl titanate mol ratio are 1: (0.06~0.14).
According to the described ester exchange synthesis of oxalic acid of claim 1 phenyl ester with load type titania Preparation of catalysts method, it is characterized in that: butyl titanate and deionized water in molar ratio: 1: (4~8).
5. according to the described ester exchange synthesis of oxalic acid of claim 1 phenyl ester load type titania Preparation of catalysts method, it is characterized in that: described sintering temperature is 500~600 ℃.
CN 200410019331 2004-05-25 2004-05-25 Preparing method for loaded titania catalyst of ester interchange synthetic phenyl ester oxalate Expired - Fee Related CN1255210C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200410019331 CN1255210C (en) 2004-05-25 2004-05-25 Preparing method for loaded titania catalyst of ester interchange synthetic phenyl ester oxalate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200410019331 CN1255210C (en) 2004-05-25 2004-05-25 Preparing method for loaded titania catalyst of ester interchange synthetic phenyl ester oxalate

Publications (2)

Publication Number Publication Date
CN1583246A true CN1583246A (en) 2005-02-23
CN1255210C CN1255210C (en) 2006-05-10

Family

ID=34600494

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 200410019331 Expired - Fee Related CN1255210C (en) 2004-05-25 2004-05-25 Preparing method for loaded titania catalyst of ester interchange synthetic phenyl ester oxalate

Country Status (1)

Country Link
CN (1) CN1255210C (en)

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101954275A (en) * 2010-09-28 2011-01-26 江苏丹化煤制化学品工程技术有限公司 Method for preparing catalyst used for gas phase catalytic synthesis of diphenyl oxalate from dimethyl oxalate
CN101564685B (en) * 2008-08-13 2011-04-13 中国科学院城市环境研究所 Method for preparing photocatalytic material of titanium oxide immobilized on fly ash
CN104109570A (en) * 2014-06-26 2014-10-22 国家电网公司 Nano titanium oxide modified transformer oil preparation method
CN104178245A (en) * 2014-06-26 2014-12-03 国家电网公司 Preparation method for transformer oil modified by concentrated nano titanium oxide liquor
CN106076304A (en) * 2016-06-16 2016-11-09 四川理工学院 Transesterification supported titanium2the preparation method of catalyst
CN107321342A (en) * 2017-07-07 2017-11-07 四川理工学院 A kind of support type MoO for synthesis of oxalic acid diphenyl ester3The preparation method of catalyst
CN108250075A (en) * 2018-03-02 2018-07-06 山东科技大学 Phenol and dimethyl oxalate exchange synthesis air lift reaction method
CN110252274A (en) * 2019-06-14 2019-09-20 湖北三宁碳磷基新材料产业技术研究院有限公司 The preparation method of ester exchange synthesizing diphenyl carbonate catalyst

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101564685B (en) * 2008-08-13 2011-04-13 中国科学院城市环境研究所 Method for preparing photocatalytic material of titanium oxide immobilized on fly ash
CN101954275A (en) * 2010-09-28 2011-01-26 江苏丹化煤制化学品工程技术有限公司 Method for preparing catalyst used for gas phase catalytic synthesis of diphenyl oxalate from dimethyl oxalate
CN104109570A (en) * 2014-06-26 2014-10-22 国家电网公司 Nano titanium oxide modified transformer oil preparation method
CN104178245A (en) * 2014-06-26 2014-12-03 国家电网公司 Preparation method for transformer oil modified by concentrated nano titanium oxide liquor
CN104109570B (en) * 2014-06-26 2016-03-30 国家电网公司 The preparation method of nano-titanium oxide modification transformer oil
CN104178245B (en) * 2014-06-26 2016-04-13 国家电网公司 The preparation method of nano-titanium oxide concentrated solution modification transformer oil
CN106076304A (en) * 2016-06-16 2016-11-09 四川理工学院 Transesterification supported titanium2the preparation method of catalyst
CN106076304B (en) * 2016-06-16 2018-10-09 四川理工学院 Transesterification supported titanium2The preparation method of catalyst
CN107321342A (en) * 2017-07-07 2017-11-07 四川理工学院 A kind of support type MoO for synthesis of oxalic acid diphenyl ester3The preparation method of catalyst
CN108250075A (en) * 2018-03-02 2018-07-06 山东科技大学 Phenol and dimethyl oxalate exchange synthesis air lift reaction method
CN110252274A (en) * 2019-06-14 2019-09-20 湖北三宁碳磷基新材料产业技术研究院有限公司 The preparation method of ester exchange synthesizing diphenyl carbonate catalyst

Also Published As

Publication number Publication date
CN1255210C (en) 2006-05-10

Similar Documents

Publication Publication Date Title
CN1613559A (en) Preparation for hydrophobic solid acid catalyst
CN1910128A (en) Method for producing acrylic acid
CN1114495C (en) Process for preparing composite catalyst and its application
CN1314654C (en) Method for synthesizing phenyloxalate from dicthyl oxalate and phenol
CN1255210C (en) Preparing method for loaded titania catalyst of ester interchange synthetic phenyl ester oxalate
CN107245065A (en) A kind of method that catalytic hydrogenation ethyl levulinate prepares valerolactone
CN101328124B (en) Ester exchange method for synthesizing ethylene diglycol diene propyl carbonic ether
CN1167664C (en) Catalytic synthesis of methyl phenyl oxalate and phenostal by using load metal oxide
CN1078876C (en) Process for production of alkyl ether of phenol and catalyst used therein
CN1583247A (en) Preparation for composite titanium oxide catalyst of ester interchange synthetic phenyl ester oxalate
CN1268422C (en) Preparation of loaded molybdenum oxide catalyst for synthesis of phenyloxalate by ester interchange process
CN100420667C (en) Methyl phenyl oxalate and diphenyl oxalate synthesizing process catalyzed with composite carrier supported metal oxide
CN1526476A (en) Catalyst for direct synthesis of methyl carbonate and its prepn
CN1120049C (en) Supported type heteropolya cid catalyst in synthesis of ethylene glycol series monoethers acetate
CN1164558C (en) Method for preparing methyl phenyl oxalate and phenostal
CN1164559C (en) Preparation method of methyl phenyl oxalate and phenostal
CN108586202B (en) Synthesis method of intermediate 4-phenylbutanol
CN1142154C (en) Catalyst carrier for preparing epoxy ethane and its prepn and catalyst prepared with it
CN1562953A (en) method for synthesizing methyl phenyl oxalate and phenostal under catalysis of oxide of bimetal
CN1566049A (en) Solid acid catalyst for preparing ethylene glycol by ethylene oxide hydration
CN1053598C (en) Zirconium oxide catalyst used in glycol series monoether acetate synthesis
CN1583708A (en) Catalytic synthesis of phenyloxalate and methyl phenyl oxalate
CN1259135C (en) Solid acid catalyzer for producing glycol by hydrating ethylene oxide
CN1172745C (en) Method for preparing load typed heteropoly acid and its salt
CN113831312B (en) Method for preparing delta-cyclopentalactone

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20060510